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An efficient garbage collection for flash memory-based virtual memory systems

机译:基于闪存的虚拟内存系统的有效垃圾收集

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摘要

As more consumer electronics adopt monolithic kernels, NAND flash memory is used for the swap space in virtual memory systems. While flash memory has the advantages of low-power consumption, shock-resistance and non-volatility, it requires garbage collection due to its erasebefore- write characteristic. The efficiency of the garbage collection scheme largely affects the performance of flash memory. This paper proposes a novel garbage collection technique which exploits data redundancy between the main memory and flash memory in flash memory-based virtual memory systems. Compared to the previous approach, our proposed scheme takes into consideration the locality of data to minimize the garbage collection overhead. In addition, by considering the computational overhead of the garbage collection algorithm, we also propose an adaptive scheme which can minimize the computational overhead with marginal I/O performance degradation. Experimental results demonstrate that the proposed garbage collection scheme improves performance by 37% on average compared to those of previous schemes1.
机译:随着越来越多的消费电子产品采用单片内核,NAND闪存被用于虚拟存储系统中的交换空间。尽管闪存具有低功耗,抗冲击和非易失性的优点,但由于其先写后擦除特性,因此需要进行垃圾收集。垃圾回收方案的效率在很大程度上影响闪存的性能。本文提出了一种新颖的垃圾收集技术,该技术利用了基于闪存的虚拟内存系统中主内存和闪存之间的数据冗余。与以前的方法相比,我们提出的方案考虑了数据的局部性,以最大程度地减少垃圾收集开销。此外,通过考虑垃圾收集算法的计算开销,我们还提出了一种自适应方案,该方案可以在不影响I / O性能的情况下最小化计算开销。实验结果表明,与以前的方案相比,该垃圾回收方案平均将性能提高了37%1。

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